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首页> 外文期刊>Science of the total environment >Exploring diurnal cycles of surface urban heat island intensity in Boston with land surface temperature data derived from GOES-R geostationary satellites
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Exploring diurnal cycles of surface urban heat island intensity in Boston with land surface temperature data derived from GOES-R geostationary satellites

机译:探索波士顿地表城市热岛强度的昼夜循环,陆地温度数据来自GoS-R地球静脉卫星

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摘要

The surface urban heat island (SUHI) is one of the most significant human-induced alterations to the Earth's surface climate and can aggravate health risks for city dwellers during heat waves. Although the SUHI effect has received growing attention, its diurnal cycles (i.e., the variations over the full 24 h within the diel cycle) are poorly understood because polar-orbiting satellites (e.g.. Landsat Series, Sentinel, Terra, Aqua) only provide one or two observations over each repeat cycle (e.g., 16 days) with constant overpass time for the same area. Geostationary satellites provide high-frequency land surface temperature (LST) observations throughout the day and the night, and thereby offer unprecedented opportunities for exploring the diurnal cycles of SUHI. Here we examined how the SUHI intensity varied over the course of the diurnal cycle in the Boston Metropolitan Area using LST observations from the NOAA's latest generation of Geostationary Operational Environmental Satellites (GOES-R). GOES-R LST was strongly correlated with MODIS LST (R~2 = 0.98, p < 0.0001) across urban core, suburban, and rural areas. We calculated the SUHI intensity at an hourly time step for both the urban core and suburban areas using GOES-R LST data. The maximum SUHI intensity for the urban core occurred near noon, and was +3.0 °C (12:00). +5.4 °C (12:00). +4.9 °C (11:00), and +3.7 °C (12:00) in winter, spring, summer, and autumn, respectively. The maximum intensity for the suburban area was about 3.0 °C lower in spring and summer and 2.0 °C lower in autumn and winter than that of the urban-core area. The minimum SUH1 intensity occurred at nighttime, and ranged from -1.0 °C to +1.0 °C. The difference in the nighttime SUH1 intensity between urban core and suburban area was insignificant for all seasons except the summer. The SUM intensity showed similar diurnal variations across the seasons. Throughout the year, the maximum SUHI intensity (+2.7-+5.8 °C) at the urban core occurred at 11:00-14:00 (local time), while the minimum SUHI intensity (-0.6-+0.9 °C) was commonly observed at 00:00-07:00 and 17:00-23:00. We also found different relationships between SUHI intensity and potential drivers within a diurnal cycle, characterized by the strongest correlation with impervious surface area and population size during the middle of the day, and with tree canopy cover at night. Our research highlights the great potential of the new-generation geostationary satellites in revealing the detailed diurnal variations of SUHI. Our findings have implications for informing urban planning and public health risk management.
机译:表面城市热岛(Suhi)是地球表面气候最重要的改变最重要的改变之一,可以在热浪中加剧城市居民的健康风险。虽然Suhi效应受到越来越关注,但它的昼夜循环(即,Diel循环内的完整24小时的变化)被理解得很差,因为偏光轨道卫星(例如Landsat系列,哨兵,Terra,Aqua)仅提供一个或者在每个重复周期(例如,16天)上的两次观察,对于相同区域的恒定立交桥时间。地球静止卫星在全天和夜晚提供高频陆地温度(LST)观察,从而为探索苏海的日期循环提供前所未有的机会。在这里,我们研究了利用Noaa最新一代地球静止运营环境卫星(GOUS-R)的LST观测,在波士顿大都市区的日元周期中苏联强度如何变化。 Gend-R LST与城市核心,郊区和农村地区的MODIS LST(R〜2 = 0.98,P <0.0001)强烈相关。我们在使用GOO-R数据的城市核心和郊区的每小时步骤中计算了SUHI强度。中午的城市核心的最大苏海强度发生,+ 3.0°C(12:00)。 +5.4°C(12:00)。 +4.9°C(11:00),冬季,春季,夏季和秋季+3.7°C(12:00)。郊区的最大强度在春季和夏季下降约3.0°C,秋季和冬季较低2.0°C而不是城市核心区域。最小SUH1强度发生在夜间,范围为-1.0°C至+1.0°C。除夏季外,城市核心和郊区之间的夜间SUH1强度的差异是微不足道的。总和强度在季节显示出类似的昼夜变化。全年,城市核心的最大苏海强度(+ 2.7- + 5.8°C)发生在11:00-14:00(当地时间),而最小的Suhi强度(-0.6- + 0.9°C)是通常在00:00-07:00和17:00-23:00观察到。我们还发现了苏海强度与昼夜潜在司机之间的不同关系,其特征在于,在一天中间与不透水表面积和人口大小的相关性,并且在夜间覆盖树冠覆盖。我们的研究突出了新一代地静止卫星的巨大潜力,揭示了苏海的详细昼夜变化。我们的研究结果对城市规划和公共卫生风险管理有影响。

著录项

  • 来源
    《Science of the total environment 》 |2021年第1期| 144224.1-144224.14| 共14页
  • 作者单位

    Institute of Global Environmental Change School of Human Settlements and Civil Engineering Xi'an jiaotong University Xi'an Shaanxi Province 710049 China Earth Systems Research Center Institute for the Study of Earth Oceans and Space University of New Hampshire Durham NH 03824 USA;

    Earth Systems Research Center Institute for the Study of Earth Oceans and Space University of New Hampshire Durham NH 03824 USA;

    Institute of Global Environmental Change School of Human Settlements and Civil Engineering Xi'an jiaotong University Xi'an Shaanxi Province 710049 China;

    Earth Systems Research Center Institute for the Study of Earth Oceans and Space University of New Hampshire Durham NH 03824 USA;

    Jiangsu Key Laboratory of Agricultural Meteorology Nanjing University of Information Science and Technology Nanjing 210044 China;

    Center for Sustainability and the Global Environment University of Wisconsin-Madison Madison WI 53726 USA;

    Center for Urban and Environmental Change Department of Earth and Environmental Systems Indiana State University Terre Haute IN 47809 USA;

    Earth System Science Interdisciplinary Center/Cooperative Institute for Satellite Earth System Studies University of Maryland College Park MD 20740 USA;

    Key Laboratory of Remote Sensing of Gansu Province Heihe Remote Sensing Experimental Research Station Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou Gansu Province 730000 China;

    Earth Systems Research Center Institute for the Study of Earth Oceans and Space University of New Hampshire Durham NH 03824 USA;

    National Engineering Laboratory for Applied Technology of Forestry and Ecology in South China Central South University of Forestry and Technology Changsha China;

    Institute of Global Environmental Change School of Human Settlements and Civil Engineering Xi'an jiaotong University Xi'an Shaanxi Province 710049 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Geostationary Operational Environmental Satellite; LST; SUHI; Diel cycle; MODIS; Thermal remote sensing;

    机译:地球静止运动环境卫星;LST;苏海;Diel循环;modis;热遥感;

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